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首页> 外文期刊>IEE Proceedings. Part M, Nanobiotechnology >Nanofunctionalisation for the treatment of peripheral nervous system injuries
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Nanofunctionalisation for the treatment of peripheral nervous system injuries

机译:纳米功能化治疗周围神经系统损伤

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A construct based on the electrostatic layer-by-layer self assembly technique has been fabricated, to be used as a tailored device to encourage nerve regeneration. A multilayered nanocoating composed of three precursor bilayers of cationic poly(dimethyldiallylammonium) chloride (PDDA) and anionic poly(styrenesulfonate) (PSS), followed by bilayers of poly-D-lysine (PDL) and antibody specific to transforming growth factor beta1 (anti-TGF-beta1), has been deposited on HYAFF 11. The assembly process has been monitored by quartz crystal microbalance (QCM) for its characterisation and then it has been used on HYAFF 11. Structural studies of the resulting multilayers confirmed stepwise deposition of anti-TGF-beta1, with an average layer thickness of 2.2 +- 0.2 nm and an average surface density of 0.36 +- 0.03 (mu)g cm~(-2). Scanning electron microscopy has been used to characterise multilayer uniformity. Finally, the immunological activity of the multilayered structure has been assessed. The results show that anti-TGF-beta1 can be included in its active form in a predetermined multilayered structure onto HYAFF 11 with quantitative control of layer thickness and weight, providing a high tool with great potential in tissue engineering.
机译:已经制造出了基于静电逐层自组装技术的构造体,以用作定制装置来鼓励神经再生。多层纳米涂层,由阳离子聚(二甲基二烯丙基铵)氯化物(PDDA)和阴离子聚(苯乙烯磺酸盐)(PSS)的三个前体双层组成,然后是聚D-赖氨酸(PDL)和对转化生长因子β1特异的抗体组成的双层-TGF-beta1)已沉积在HYAFF 11上。组装过程已通过石英晶体微量天平(QCM)进行了表征,然后已在HYAFF 11上使用。 -TGF-β1,平均层厚度为2.2±0.2nm,平均表面密度为0.36±0.03μg·cm-2(-2)。扫描电子显微镜已用于表征多层均匀性。最后,已经评估了多层结构的免疫活性。结果表明,抗TGF-β1可以其活性形式以预定的多层结构形式包含在HYAFF 11上,并可以定量控制层的厚度和重量,从而提供了在组织工程中具有巨大潜力的高工具。

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